Nuclei
Define atomic mass unit (amu) and calculate the energy equivalent of 1 amu in mega-electron volts (MeV).
Explain the phenomenon of nuclear fission with a suitable example and state how energy is released in the process.
Write down three salient features of nuclear forces that distinguish them from electrostatic and gravitational forces.
The half-life of a radioactive substance is 30 days. Calculate the time taken for $7/8^{\text{th}}$ of the original mass of the substance to disintegrate.
State the radioactive decay law. Derive mathematically the exponential decay law expression $N(t) = N_0 e^{-\lambda t}$ for a radioactive substance.
What is radioactivity? State the law of radioactive decay and derive the mathematical expression $N(t) = N_0 e^{-\lambda t}$. Define half-life and mean life of a radioactive substance, and write down the relation between them.
What is nuclear fusion? Explain the conditions necessary for nuclear fusion to take place. Why is it difficult to achieve controlled nuclear fusion on Earth, and what is its significance as a future energy source?